Exotic tetraquark states with $J^{PC}=0^{+-}$
Abstract
We use the Laplace/Borel sum rules (LSR) and the finite energy/local duality sum rules (FESR) to investigate the non-strange and hidden-strange tetraquark states with exotic quantum numbers . We systematically construct all eight possible tetraquark currents in this channel without covariant derivative operator. Our analyses show that the systems have good behaviour of sum rule stability and expansion series convergence in both the LSR and FESR analyses, while the LSR for the states do not associate with convergent OPE series in the stability regions and only the FESR can provide valid results. We give the mass predictions GeV and GeV for the and tetraquark states, respectively. Our results indicate that the isovector tetraquark may only decay via weak interaction mechanism, e.g. , since its strong decays are forbidden by kinematics and the symmetry constraints on the exotic quantum numbers. It is predicted to be very narrow, if it does exist. The isoscalar tetraquark is also predicted to be not very wide because its dominate decay mode is in -wave.
Cite
@article{arxiv.1811.03333,
title = {Exotic tetraquark states with $J^{PC}=0^{+-}$},
author = {Yi-Chao Fu and Zhuo-Ran Huang and Zhu-Feng Zhang and Wei Chen},
journal= {arXiv preprint arXiv:1811.03333},
year = {2019}
}
Comments
11 pages, 4 figures. Typos corrected